首页> 外文期刊>Computer methods in biomechanics and bio >Propagation of errors in two methods for determining tibial contact locations using single-plane fluoroscopy following total knee arthroplasty
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Propagation of errors in two methods for determining tibial contact locations using single-plane fluoroscopy following total knee arthroplasty

机译:在全膝关节置换术后使用单平面荧光检查法确定胫骨接触位置的两种方法中的误差传播

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Analysis of anterior-posterior (A-P) tibial contact locations following total knee arthroplasty (TKA) provides an objective assessment of the relative motion of the tibia on the femur during activities of daily living. Determining A-P tibial contact locations using single-plane fluoroscopy requires input in the form of the relative 3D position and orientation of the components. Although errors in the relative 3D position and orientation of the components have been quantified, it is unknown how these errors propagate into errors in the A-P tibial contact locations. To assess the propagation of errors for two methods used to calculate A-P tibial contact locations, 1000-iteration Monte Carlo simulations were performed for different reference relative 3D positions and orientations of the femoral component. For each iteration, random errors were added to each of the six degrees of freedom of the reference relative 3D position and orientation and the A-P tibial contact locations were calculated using the closest point method and the penetration method. The root mean squared errors (RMSEs) for the closest point method and penetration method were 1.2 mm and 2.4 mm, respectively. Errors in the A-P tibial contact location due to errors in the relative 3D position and orientation of the components place a lower bound on the errors in computing A-P tibial contact location for each method.The RMSEs of 1.2 mm and 2.4 mm for the closest point and penetration methods, respectively, were due primarily to random errors and indicate that both methods have the potential to provide objective assessment of A-P tibial contact locations following TKA.
机译:全膝关节置换术(TKA)后胫骨前后位置的接触分析可客观评估胫骨在日常生活活动过程中在股骨上的相对运动。使用单平面荧光检查法确定A-P胫骨接触位置需要以相对3D位置和组件方向的形式输入。尽管已量化了组件相对3D位置和方向中的错误,但未知这些错误如何传播到A-P胫骨接触位置的错误中。为了评估两种用于计算A-P胫骨接触位置的方法的误差传播,针对股骨组件的不同参考相对3D位置和方向执行了1000次迭代的Monte Carlo模拟。对于每次迭代,将随机误差添加到参考相对3D位置和方向的六个自由度中的每个自由度,并使用最近点法和穿透法计算A-P胫骨接触位置。最近点法和穿透法的均方根误差(RMSE)分别为1.2 mm和2.4 mm。由于每种方法的相对3D位置和方向的错误导致的AP胫骨接触位置的误差为计算每种方法的AP胫骨接触位置的误差提供了下限。最近点的RMSE为1.2 mm和2.4 mm穿透方法分别主要是由随机误差引起的,表明这两种方法都有可能提供对TKA后AP胫骨接触位置的客观评估。

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